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Design and Analysis of a Novel Axial-Flux Slotless Limited-Angle Torque Motor With Trapezoidal Cross Section for the Stator

机译:新型梯形截面轴向磁通无槽有限角转矩电动机的设计与分析

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摘要

This paper presents a novel limited-angle torque motor as a modified double-sided slotless axial-flux permanent-magnet motor (DSAPM) with a trapezoidal cross section for the stator. A new approach to the magnetic equivalent circuit and semi-three-dimensional (3-D) analytical armature reaction field modeling for the proposed actuator are derived and implemented in the design process. Designing is done based on avoidance of saturation at maximum torque production to prevent distortion of torque characteristic in short-time operations. Next, finite-element analysis is utilized to confirm the accuracy of the design equations and to compare the proposed actuator with conventional industrial limited-angle torque motors and the conventional DSAPM structure. Finally, the proposed actuator is prototyped and its experimental results are presented and discussed. Finite-element analysis and experimental data show better accuracy of the model, electromagnetic capability improvements by this new structure and excellent applicability of the proposed rotary actuator.
机译:本文提出了一种新颖的有限角度转矩电动机,它是一种改进的双面无槽轴向磁通永磁体(DSAPM),定子的截面为梯形。在设计过程中推导了一种新的方法,用于拟议的致动器的磁等效电路和半三维(3-D)分析电枢反应场建模。基于避免最大转矩产生时的饱和来进行设计,以防止短时操作中转矩特性的失真。接下来,利用有限元分析来确认设计方程的准确性,并将拟议的执行器与常规工业有限角度转矩电动机和常规DSAPM结构进行比较。最后,对提出的执行器进行原型设计,并给出和讨论其实验结果。有限元分析和实验数据表明,该模型具有更高的精度,该新结构改善了电磁性能,并且所提出的旋转执行器具有出色的适用性。

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